Roberts Adam P, Chandler Michael, Courvalin Patrice, Guédon Gérard, Mullany Peter, Pembroke Tony, Rood Julian I, Smith C Jeffery, Summers Anne O, Tsuda Masataka, Berg Douglas E
Division of Microbial Diseases, UCL Eastman Dental Institute, University College London, 256 Gray's Inn Road, London WC1X 8LD, UK.
Plasmid. 2008 Nov;60(3):167-73. doi: 10.1016/j.plasmid.2008.08.001. Epub 2008 Sep 26.
Transposable DNA elements occur naturally in the genomes of nearly all species of prokaryotes. A proposal for a uniform transposable element nomenclature was published prominently in the 1970s but is not, at present, available online even in abstract form, and many of the newly discovered elements have been named without reference to it. We propose here an updated version of the original nomenclature system for all of the various types of prokaryotic, autonomous, transposable elements excluding insertion sequences, for which a nomenclature system already exists. The use of this inclusive and sequential Tn numbering system for transposable elements, as described here, recognizes the ease of interspecies spread of individual elements, and allows for the naming of mosaic elements containing segments from two or more previously described types of transposons or plasmids. It will guard against any future need to rename elements following changes in bacterial nomenclature which occurs constantly with our increased understanding of bacterial phylogenies and taxonomic groupings. It also takes into account the increasing importance of metagenomic sequencing projects and the continued identification of new mobile elements from unknown hosts.
转座DNA元件几乎存在于所有原核生物物种的基因组中。20世纪70年代曾显著发表过一份关于统一转座元件命名法的提议,但目前即使以摘要形式也无法在线获取,而且许多新发现的元件在命名时并未参考该提议。我们在此提出原始命名系统的更新版本,用于除插入序列(已有命名系统)之外的所有各类原核自主转座元件。本文所述的这种用于转座元件的包容性连续Tn编号系统,认识到单个元件在种间传播的便利性,并允许对包含来自两种或更多种先前描述的转座子或质粒片段的嵌合元件进行命名。它将防止因细菌命名法的变化(随着我们对细菌系统发育和分类分组的认识不断增加,这种变化经常发生)而在未来需要对元件重新命名。它还考虑到宏基因组测序项目日益增加的重要性以及不断从未知宿主中鉴定出新的移动元件。